Automatic gardens pergola of watering
Technical Field
The utility model relates to the technical field of garden flower frames, in particular to an automatic watering garden flower frame.
Background
A garden flower stand is a garden facility, and forms a grid with a certain shape by using rigid materials such as wood, bamboo, concrete, stone, bricks and the like for climbing plants. It can be used as a support for the growth of climbing plants, and also has the functions of organizing space, constructing landscapes, sunshade and resting, etc. The garden flower stand has various forms, and is a common dotted flower stand, a straight flower stand and a folded flower stand. The dot-shaped flower stand is generally arranged at the focus of the sight, and has attractive appearance and mainly decorative effect. The straight flower stand is the most common form, straight upright posts, beams are arranged along the arrangement direction of the posts, flower stand strips are arranged on the beams at certain intervals, two ends of each flower stand are outwards selected, and a stool or a flower window partition can be placed between the posts. The folded flower stand is processed into flower stands with different angles or circular arcs at the turning position, and the flower stand has unique modeling. Meanwhile, the matching of the flower stand and the plants is very important, and the growth habit and the climbing mode of the plants are paid attention to, and proper plants are selected for matching so as to achieve the optimal landscape effect.
The Chinese patent publication number is CN208597436U, which discloses a rain-proof garden flower stand; the solar energy is adopted to pass through the electric energy source, the light sensor is used for being connected with the STC89C51 singlechip to control the opening and closing of the plant spectral growth, the switch board is used for controlling the low-speed direct current motor to do reverse rotation operation, the rainproof sunshade layer in the scroll can be used for rainproof shielding garden plants, and the plant spectral growth lamp is controlled by the light sensor and the STC89C51 singlechip to carry out night spectral irradiation.
The prior art solutions described above have the following drawbacks: the garden flower stand is controlled to be opened and closed for controlling the spectral growth of plants mainly through the cooperation of the light-sensitive sensor and the singlechip, the growth of the plants is effectively promoted, but the plants planted in the garden flower stand are not watered and sprayed, and the water demand required by the growth of the plants cannot be met, so that the garden flower stand is automatically irrigated, and the problem of the automatic watering is solved.
Disclosure of utility model
The utility model aims to provide an automatic watering garden flower stand, which aims to solve the problems that in the prior art, the existing garden flower stand controls the on and off of the spectral growth of plants through the cooperation of a light sensor and a singlechip to effectively promote the growth of the plants, but the water spraying operation is not carried out on the plants planted in the garden flower stand, and the water requirement required by the growth of the plants cannot be met.
In order to achieve the above purpose, the present utility model provides the following technical solutions: the utility model provides an automatic gardens pergola of watering, includes gardens pergola body, the bilateral symmetry and the equidistance on gardens pergola body top are provided with a plurality of top supporting beams, be provided with the fixed beam between the upper end of top supporting beam, the below correspondence fixed mounting of top supporting beam has the side support column, the below of top supporting beam lower extreme is provided with sprays the mechanism, both ends are provided with four flower nursery respectively around gardens pergola body lower extreme both sides, the homonymy be provided with the collection rain bucket between the flower nursery, the homonymy the top fixed mounting of top supporting beam has a collection rain frame.
Preferably, a positioning edge is arranged at the middle position above the fixed beam, an auxiliary beam is fixedly arranged between the upper end of the side support column and the lower ends of the top support beam and the fixed beam, and a connecting column is fixedly arranged at the upper end of the top support beam at equal intervals.
Preferably, the upper end of the rain collecting frame is in sealing connection with the fixed beam, a drain pipe is arranged on the outer side of the side supporting columns at the middle positions of the two sides, the upper end of the drain pipe is in sealing connection with the lower end of the rain collecting frame, and the lower end of the drain pipe is in sealing connection with the middle position of the upper end of the rain collecting barrel.
Preferably, the inside of collection rain bucket is provided with the reposition of redundant personnel piece, and the upper end of reposition of redundant personnel piece is isosceles triangle shape, the inside of flower nursery upper end is provided with kind flower groove, the below of kind flower groove is provided with the water absorption groove, the both sides of collection rain bucket link up with the water absorption groove through the raceway.
Preferably, a plurality of absorbent cotton pieces are arranged in the inner rectangle at the bottom of the flower planting groove, an absorbent cotton strip is arranged below the absorbent cotton pieces, and the absorbent cotton strip penetrates through and extends to the inside of the absorbent groove and is attached to the bottom end of the absorbent groove.
Preferably, the spraying mechanism comprises a spraying mechanism screw rod, a sliding block, a shunt tube, nozzles, a corrugated tube and a spraying water inlet tube, wherein the spraying mechanism screw rod is arranged below the top supporting beam on the same side, the sliding block is arranged below the spraying mechanism screw rod in a transmission manner, the shunt tube is fixedly arranged below the sliding block, and three nozzles are respectively and hermetically arranged at the lower ends of the shunt tube.
Preferably, one side of the side support column at the middle position of the two sides is fixedly provided with a spray water inlet pipe, and the spray water inlet pipe is in sealing connection with the shunt pipe through a corrugated pipe.
Compared with the prior art, the utility model has the beneficial effects that: the utility model is characterized in that when raining, rainwater flows into the rainwater collecting frame along the radian of the fixed beam and the positioning edge, a filter screen is arranged at the connecting position of the rainwater collecting frame and the drain pipe, the filter screen filters the collected rainwater, the filtered rainwater flows into the rainwater collecting barrel along the drain pipe, the rainwater is guided by the diversion block and flows into the water pipe at an inclined angle, the rainwater in the water absorbing groove is absorbed by the water absorbing cotton sliver and is upwards transmitted to the water absorbing cotton piece along with the water pipe entering the water absorbing groove, the water absorbing cotton piece transmits the water to the soil in the flower planting groove, thereby maintaining the humidity of the soil, when the rainfall is insufficient, the water absorbing groove can be manually added with water, thereby maintaining the sufficient humidity of the soil, one side of the lower end of the water spraying inlet pipe is provided with a valve, when the water spraying is needed, the tap water connected with the water spraying inlet pipe is started to enter the water spraying pipe along with the pressure of the water spraying inlet pipe, along with the flowing of the spraying water inlet pipe into the corrugated pipe and the flowing of the corrugated pipe into the shunt pipe, the spraying mechanism screw rod is started while spraying, the spraying mechanism screw rod drives the sliding block to move towards the rear side of the garden flower stand body, thereby spraying the leaves and the branches of the plants at the two sides of the garden flower stand body, keeping the wettability of the leaves, improving the ornamental value of the plants, simultaneously providing extra moisture for the plants, improving the photosynthesis efficiency of the leaves, increasing the growth speed and the health degree of the plants, solving the problems that the existing garden flower stand controls the opening and closing of the spectral growth of the plants by controlling the garden flower stand through the cooperation of the light sensor and the singlechip, effectively promoting the growth of the plants, but not carrying out watering and spraying operation on the plants planted in the garden flower stand, the water demand required by plant growth cannot be satisfied.
Drawings
FIG. 1 is a front view of the present utility model;
FIG. 2 is a schematic diagram of the structure of the present utility model;
FIG. 3 is an enlarged view of a portion of the area A of FIG. 3 in accordance with the present utility model;
FIG. 4 is a side view of the present utility model;
fig. 5 is a schematic structural view of a flower nursery and a rain barrel according to the present utility model.
In the figure: 1. a garden flower stand body; 2. a side support column; 3. a top support beam; 4. a fixed beam; 5. positioning edges; 6. an auxiliary beam; 7. a spraying mechanism; 8. flower nursery; 9. a drain pipe; 10. a connecting column; 11. a rain collecting frame; 12. a spray mechanism screw rod; 13. a sliding block; 14. a shunt; 15. a nozzle; 16. a bellows; 17. rain collecting barrel; 18. spraying a water inlet pipe; 19. a flower planting groove; 20. a water suction tank; 21. a shunt block; 22. a water pipe; 23. a water-absorbing cotton sheet; 24. a water absorbing cotton sliver.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments.
Referring to fig. 1-5, an embodiment of the present utility model is provided: the utility model provides an automatic gardens pergola of watering, including gardens pergola body 1, the bilateral symmetry on gardens pergola body 1 top and equidistance are provided with a plurality of top supporting beams 3, be provided with fixed beam 4 between the upper end of top supporting beam 3, the below correspondence fixed mounting of top supporting beam 3 has side support column 2, the below of top supporting beam 3 lower extreme is provided with sprays mechanism 7, both ends are provided with four flower nursery 8 respectively around gardens pergola body 1 lower extreme both sides, be provided with album rain bucket 17 between the homonymy flower nursery 8, the top fixed mounting of homonymy top supporting beam 3 has album rain frame 11.
During raining, rainwater can flow to the inside of collecting frame 11 along the radian of fixed beam 4 and location limit 5, collecting frame 11 and the hookup location department of drain pipe 9 are provided with the filter screen, the filter screen can filter the rainwater of gathering, the rainwater after filtering flows to the inside of collecting barrel 17 along drain pipe 9, the rainwater receives the guide and the inclination of reposition of redundant personnel piece 21 and flows to raceway 22 in, along with raceway 22 gets into the inside of water-absorbing tank 20, the rainwater in water-absorbing tank 20 can be absorbed by water-absorbing cotton silver 24 and upwards conduct and give water-absorbing cotton piece 23, water-absorbing cotton piece 23 will moisture conduct to the soil in the planting groove 19, thereby keep the humidity of soil, when the rainfall is not enough, can manually add water to water-absorbing tank 20, thereby keep the abundant humidity of soil
Referring to fig. 1-2, a positioning edge 5 is provided at a middle position above the fixed beam 4, an auxiliary beam 6 is fixedly installed between the upper end of the side support beam 2 and the lower ends of the top support beam 3 and the fixed beam 4, and a connecting column 10 is fixedly installed at equal intervals on the upper end of the top support beam 3.
Referring to fig. 2 and 4, the upper end of the rain collecting frame 11 is in sealing connection with the fixed beam 4, the outer sides of the side support columns 2 at the middle positions of the two sides are provided with the drain pipes 9, the upper ends of the drain pipes 9 are in sealing connection with the lower end of the rain collecting frame 11, and the lower ends of the drain pipes 9 are in sealing connection with the middle position of the upper end of the rain collecting barrel 17.
Referring to fig. 5, a diversion block 21 is disposed in the rain collecting barrel 17, an isosceles triangle is formed at the upper end of the diversion block 21, a flower planting groove 19 is disposed in the upper end of the flower nursery 8, a water absorbing groove 20 is disposed below the flower planting groove 19, and two sides of the rain collecting barrel 17 are communicated with the water absorbing groove 20 through water pipes 22.
Referring to fig. 5, a plurality of absorbent cotton sheets 23 are disposed in an inner rectangle at the bottom end of the flower groove 19, and a cotton sliver 24 is disposed below the absorbent cotton sheets 23, and the cotton sliver 24 penetrates and extends into the absorbent groove 20 and is attached to the bottom end of the absorbent groove 20.
Referring to fig. 2-4, the spraying mechanism 7 comprises a spraying mechanism screw 12, a sliding block 13, a shunt tube 14, nozzles 15, a corrugated tube 16 and a spraying water inlet tube 18, wherein the spraying mechanism screw 12 is arranged below the same side top supporting beam 3, the sliding block 13 is arranged below the spraying mechanism screw 12 in a transmission manner, the shunt tube 14 is fixedly arranged below the sliding block 13, and three nozzles 15 are respectively and hermetically arranged at the lower ends of the shunt tubes 14.
Referring to fig. 3-4, a spray water inlet pipe 18 is fixedly installed on one side of the side support column 2 at the middle position of two sides, and the spray water inlet pipe 18 is in sealing connection with the shunt pipe 14 through a corrugated pipe 16.
Working principle: during raining, the rainwater can flow to the inside of album rain frame 11 along the radian of fixed beam 4 and location limit 5, the collection rain frame 11 is provided with the filter screen with the hookup location department of drain pipe 9, the filter screen can filter the rainwater that gathers, the rainwater after filtering flows to the inside of album rain bucket 17 along drain pipe 9, the rainwater receives the guide and the inclination flow of reposition of redundant personnel piece 21 to the raceway 22 in, along with the inside that raceway 22 got into water-absorbing tank 20, the rainwater inside water-absorbing tank 20 can be absorbed by water-absorbing silver 24 and upwards conduct for water-absorbing cotton piece 23, water-absorbing cotton piece 23 with the soil in the seed flower groove 19 of water-absorbing cotton piece conduction, thereby keep the humidity of soil, when the rainfall is not enough, can be manual add water to water-absorbing tank 20, thereby keep the abundant humidity of soil, one side of spraying the inlet tube 18 lower extreme is provided with the valve, when needs to spray, open the valve and spray the inside that inlet tube 18 connects, along with the pressure entering inlet tube 18 of self, along with the inlet tube 18 flows to bellows 16, then along with bellows 16 flows in the shunt tube 14, respectively from three nozzle 15, the improvement, the blade 12 is sprayed out to the leaf frame 12, the health of the plant, thereby the effect of the plant can be improved, the plant growth of the side of the plant growth frame is realized, and the plant growth of the leaf frame is improved, and the humidity of the plant growth, and the plant growth is improved, and the plant growth.
It will be evident to those skilled in the art that the utility model is not limited to the details of the foregoing illustrative embodiments, and that the present utility model may be embodied in other specific forms without departing from the spirit or essential characteristics thereof. The present embodiments are, therefore, to be considered in all respects as illustrative and not restrictive, the scope of the utility model being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference sign in a claim should not be construed as limiting the claim concerned.